firmware: qcom_scm: Cleanup code in qcom_scm_assign_mem()
There are some questionable coding styles in this function. It looks quite odd to deref a pointer with array indexing that only uses the first element. Also, destroying an input/output variable halfway through the function and then overwriting it on success is not clear. It's better to use a local variable and the kernel macros to step through each bit set in a bitmask and clearly show where outputs are set. Cc: Ian Jackson <ian.jackson@citrix.com> Cc: Julien Grall <julien.grall@arm.com> Cc: Bjorn Andersson <bjorn.andersson@linaro.org> Cc: Avaneesh Kumar Dwivedi <akdwived@codeaurora.org> Tested-by: Bjorn Andersson <bjorn.andersson@linaro.org> Signed-off-by: Stephen Boyd <swboyd@chromium.org> [bjorn: Changed for_each_set_bit() size to BITS_PER_LONG] Signed-off-by: Bjorn Andersson <bjorn.andersson@linaro.org>
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@ -434,7 +434,8 @@ EXPORT_SYMBOL(qcom_scm_set_remote_state);
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*/
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int qcom_scm_assign_mem(phys_addr_t mem_addr, size_t mem_sz,
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unsigned int *srcvm,
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struct qcom_scm_vmperm *newvm, int dest_cnt)
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const struct qcom_scm_vmperm *newvm,
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unsigned int dest_cnt)
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{
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struct qcom_scm_current_perm_info *destvm;
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struct qcom_scm_mem_map_info *mem_to_map;
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@ -449,11 +450,10 @@ int qcom_scm_assign_mem(phys_addr_t mem_addr, size_t mem_sz,
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int next_vm;
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__le32 *src;
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void *ptr;
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int ret;
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int len;
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int i;
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int ret, i, b;
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unsigned long srcvm_bits = *srcvm;
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src_sz = hweight_long(*srcvm) * sizeof(*src);
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src_sz = hweight_long(srcvm_bits) * sizeof(*src);
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mem_to_map_sz = sizeof(*mem_to_map);
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dest_sz = dest_cnt * sizeof(*destvm);
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ptr_sz = ALIGN(src_sz, SZ_64) + ALIGN(mem_to_map_sz, SZ_64) +
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@ -466,28 +466,26 @@ int qcom_scm_assign_mem(phys_addr_t mem_addr, size_t mem_sz,
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/* Fill source vmid detail */
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src = ptr;
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len = hweight_long(*srcvm);
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for (i = 0; i < len; i++) {
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src[i] = cpu_to_le32(ffs(*srcvm) - 1);
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*srcvm ^= 1 << (ffs(*srcvm) - 1);
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}
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i = 0;
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for_each_set_bit(b, &srcvm_bits, BITS_PER_LONG)
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src[i++] = cpu_to_le32(b);
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/* Fill details of mem buff to map */
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mem_to_map = ptr + ALIGN(src_sz, SZ_64);
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mem_to_map_phys = ptr_phys + ALIGN(src_sz, SZ_64);
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mem_to_map[0].mem_addr = cpu_to_le64(mem_addr);
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mem_to_map[0].mem_size = cpu_to_le64(mem_sz);
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mem_to_map->mem_addr = cpu_to_le64(mem_addr);
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mem_to_map->mem_size = cpu_to_le64(mem_sz);
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next_vm = 0;
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/* Fill details of next vmid detail */
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destvm = ptr + ALIGN(mem_to_map_sz, SZ_64) + ALIGN(src_sz, SZ_64);
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dest_phys = ptr_phys + ALIGN(mem_to_map_sz, SZ_64) + ALIGN(src_sz, SZ_64);
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for (i = 0; i < dest_cnt; i++) {
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destvm[i].vmid = cpu_to_le32(newvm[i].vmid);
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destvm[i].perm = cpu_to_le32(newvm[i].perm);
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destvm[i].ctx = 0;
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destvm[i].ctx_size = 0;
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next_vm |= BIT(newvm[i].vmid);
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for (i = 0; i < dest_cnt; i++, destvm++, newvm++) {
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destvm->vmid = cpu_to_le32(newvm->vmid);
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destvm->perm = cpu_to_le32(newvm->perm);
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destvm->ctx = 0;
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destvm->ctx_size = 0;
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next_vm |= BIT(newvm->vmid);
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}
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ret = __qcom_scm_assign_mem(__scm->dev, mem_to_map_phys, mem_to_map_sz,
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@ -49,8 +49,9 @@ extern int qcom_scm_pas_mem_setup(u32 peripheral, phys_addr_t addr,
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extern int qcom_scm_pas_auth_and_reset(u32 peripheral);
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extern int qcom_scm_pas_shutdown(u32 peripheral);
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extern int qcom_scm_assign_mem(phys_addr_t mem_addr, size_t mem_sz,
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unsigned int *src, struct qcom_scm_vmperm *newvm,
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int dest_cnt);
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unsigned int *src,
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const struct qcom_scm_vmperm *newvm,
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unsigned int dest_cnt);
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extern void qcom_scm_cpu_power_down(u32 flags);
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extern u32 qcom_scm_get_version(void);
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extern int qcom_scm_set_remote_state(u32 state, u32 id);
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@ -87,8 +88,8 @@ qcom_scm_pas_auth_and_reset(u32 peripheral) { return -ENODEV; }
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static inline int qcom_scm_pas_shutdown(u32 peripheral) { return -ENODEV; }
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static inline int qcom_scm_assign_mem(phys_addr_t mem_addr, size_t mem_sz,
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unsigned int *src,
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struct qcom_scm_vmperm *newvm,
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int dest_cnt) { return -ENODEV; }
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const struct qcom_scm_vmperm *newvm,
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unsigned int dest_cnt) { return -ENODEV; }
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static inline void qcom_scm_cpu_power_down(u32 flags) {}
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static inline u32 qcom_scm_get_version(void) { return 0; }
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static inline u32
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